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首页> 外文期刊>Plant Physiology >The Cyclization of the 3,6-Anhydro-Galactose Ring of -Carrageenan Is Catalyzed by Two D-Galactose-2,6-Sulfurylases in the Red Alga Chondrus crispus
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The Cyclization of the 3,6-Anhydro-Galactose Ring of -Carrageenan Is Catalyzed by Two D-Galactose-2,6-Sulfurylases in the Red Alga Chondrus crispus

机译:角叉菜胶的3,6-脱水半乳糖环的环化反应被赤藻软骨中的两个D-半乳糖-2,6-硫酸化酶催化。

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摘要

Carrageenans are sulfated galactans found in the cell walls of numerous red seaweeds (Rhodophyta). They are classified according to the number and the position of sulfate ester groups and the occurrence of 3,6-anhydro-galactose. Although the carrageenan biosynthesis pathway is not fully understood, it is usually accepted that the last step consists of the formation of a 3,6-anhydro ring found in - and -carrageenans through the enzymatic conversion of D-galactose-6-sulfate or D-galactose-2,6-disulfate occurring in µ- and -carrageenan, respectively. We purified two enzymes, sulfurylase I (65 kD) and sulfurylase II (32 kD), that are able to catalyze the conversion of - into -carrageenan. We compared their sulfate release rates (i.e. arising from the formation of the anhydro ring) with the viscosity of the solution and demonstrated two distinct modes of action. In addition, we found that some mixtures of sulfurylase I and II lead to the formation of carrageenan solutions with unexpectedly low viscosities. We discuss the implication of these findings for the assembly of a densely aggregated matrix in red algal cell walls.
机译:角叉菜胶是在许多红海藻(Rhodophyta)的细胞壁中发现的硫酸化半乳聚糖。根据硫酸酯基的数目和位置以及3,6-脱水-半乳糖的出现将它们分类。尽管尚未完全理解角叉菜胶的生物合成途径,但通常认为最后一步是通过D-半乳糖-6-硫酸盐或D的酶促转化形成在-和-角叉菜胶中发现的3,6-脱水环。 -半乳糖-2,6-二硫酸盐分别存在于μ-和-角叉菜胶中。我们纯化了两种酶,即硫酸化酶I(65 kD)和硫酸化酶II(32 kD),它们能够催化-转化为-角叉菜胶。我们将它们的硫酸盐释放速率(即由于形成脱水环而产生的硫酸盐)与溶液的粘度进行了比较,并证明了两种不同的作用方式。此外,我们发现,硫化酶I和II的某些混合物会导致形成卡拉胶溶液,其粘度出乎意料的低。我们讨论了这些发现对红藻细胞壁中密集聚集的基质组装的意义。

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